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    • 72. 发明授权
    • Feedback method and system of channel quality indicatior
    • 信道质量指标的反馈方法和系统
    • US08787189B2
    • 2014-07-22
    • US13257790
    • 2009-12-28
    • Yunfeng SunJing JiangChangqing ZhuJunfeng Zhang
    • Yunfeng SunJing JiangChangqing ZhuJunfeng Zhang
    • H04L12/26H04L12/24H04W24/10
    • H04L41/5032H04B7/024H04B7/0632H04B7/0641H04B7/065H04W24/10
    • A method of CQI feedback comprises: in a CoMP system, a terminal feeding back a CQI corresponding to a comprehensive channel formed between the terminal and all transmission nodes in a CATS or each CQI corresponding to each channel between the terminal and each transmission node. A system of CQI feedback; in the system is also disclosed, a feedback unit at the terminal side is used in the CoMP system to calculate and feed back the CQI corresponding to the comprehensive channel formed between the terminal and all the transmission nodes in the CATS or each CQI corresponding to each channel between the terminal and each transmission node. With the method and system of the present invention, not only the CQI feedback in the CoMP system can be realized, but also the difference between the CQI feedback in the control channel and that in the traffic channel can be avoided.
    • 一种CQI反馈的方法包括:在CoMP系统中,终端在CATS中对与终端与所有发送节点之间形成的综合信道相对应的CQI进行反馈,或者对应于终端与每个发送节点之间的每个信道的每个CQI。 一种CQI反馈系统; 在该系统中还公开了在CoMP系统中使用终端侧的反馈单元,计算并反馈与CATS中的终端与所有发送节点之间形成的综合信道对应的CQI,或对应于每个CQI 终端和每个传输节点之间的通道。 利用本发明的方法和系统,不仅可以实现CoMP系统中的CQI反馈,而且可以避免控制信道中的CQI反馈与业务信道中的CQI反馈之间的差异。
    • 73. 发明授权
    • Aperiodic channel quality information sending method
    • 非周期信道质量信息发送方式
    • US08638865B2
    • 2014-01-28
    • US13259322
    • 2010-01-28
    • Jing JiangChenchen ZhangJunfeng Zhang
    • Jing JiangChenchen ZhangJunfeng Zhang
    • H04L27/00
    • H04L1/0027H04B7/0617H04B7/0632H04B7/0639H04L1/0026
    • The present invention provides an aperiodic channel quality information sending method and a mobile terminal. The method comprises: a mobile terminal and network side pre-appointing one or more transmission modes which support the forming of dual flow beam, and aperiodic channel quality information CQI feedback mode(s) corresponding to the transmission modes; the network side indicating the mobile terminal with one pre-appointed transmission mode to be adopted, wherein when the mobile terminal receiving the indication of adopting the one pre-appointed transmission mode, the mobile terminal adopts the aperiodic CQI feedback mode corresponding to the one pre-appointed transmission mode to feed back the CQI information to the network side. The method of the present invention facilitates the reduction of signaling overhead and feedback overhead, the increase of the feedback dimensionality of the channel information, and the improvement of the throughput of the system.
    • 本发明提供一种非周期性信道质量信息发送方法和移动终端。 该方法包括:移动终端和网络侧预先指定支持双流束形成的一种或多种传输模式,以及对应于传输模式的非周期信道质量信息CQI反馈模式; 网络侧指示具有一个预先指定的传输模式的移动终端,其中当移动终端接收到采用一个预先指定的传输模式的指示时,移动终端采用对应于一个预先指派的传输模式的非周期性CQI反馈模式 所述发送模式将CQI信息反馈给网络侧。 本发明的方法有助于减少信令开销和反馈开销,增加信道信息的反馈维度,以及提高系统的吞吐量。
    • 76. 发明授权
    • Computing environment representation
    • 计算环境表示
    • US08484174B2
    • 2013-07-09
    • US12052554
    • 2008-03-20
    • Dharma ShuklaOri AmigaVijayendra VasuJunfeng Zhang
    • Dharma ShuklaOri AmigaVijayendra VasuJunfeng Zhang
    • G06F17/00
    • G06F17/30923G06F17/30607
    • A computing environment may be represented as a deployable object hierarchy, which may be organized according to an object hierarchy schema that is commonly shared among the computing environment host and the devices that are configured to render the computing environment. A particular object hierarchy schema is presented in detail for representing a computing environment, wherein many objects of the computing environment are modeled as resources that may be distinctly addressable (e.g., in a RESTful object hierarchy.) Many types of objects and properties thereof are presented in order to elucidate an exemplary object hierarchy schema and to illustrate exemplary objects and object hierarchies organized according thereto. Additional properties of various object hierarchy schemas include extensibility, deployability, and object addressing models with various advantages.
    • 计算环境可以被表示为可部署对象分层结构,其可以根据计算环境主机和被配置为呈现计算环境的设备之间共同共享的对象分层架构进行组织。 为了表示计算环境,给出了一个特定的对象层次结构模式,其中计算环境的许多对象被建模为可以明显寻址的资源(例如,在RESTful对象层次结构中)。呈现了许多类型的对象及其属性 以阐明示例性对象层次结构模式并且示出根据其组织的示例性对象和对象层次结构。 各种对象层次结构模式的其他属性包括具有各种优点的可扩展性,可部署性和对象寻址模型。
    • 77. 发明申请
    • Transmission power configuration method and apparatus for demodulation reference signal
    • 用于解调参考信号的发射功率配置方法和装置
    • US20120270591A1
    • 2012-10-25
    • US13258310
    • 2010-10-20
    • Yunfeng SunWenfeng ZhangJing JiangJunfeng Zhang
    • Yunfeng SunWenfeng ZhangJing JiangJunfeng Zhang
    • H04W52/14
    • H04W52/325H04L5/0035H04L5/0048H04W52/42
    • The present disclosure discloses a transmission power configuration method for a Demodulation Reference Signal (DMRS), and the method comprises: configuring the ratio between transmission power of a DMRS at each layer in a Resource Element (RE) and transmission power of data at a corresponding layer to be a constant value. Meanwhile, the present disclosure discloses a transmission power configuration apparatus for the DMRS. The present disclosure greatly improves the correct rate of data frame decoding, and improves decoding performance. The present disclosure enables the network side not need to notify a UE of the corresponding relationship between transmission power of DMRS at each layer and transmission power of data at the corresponding layer, which simplifies the overhead of the control signalling in the network side. As the corresponding relationship between transmission power of DMRS at each layer and transmission power of data at the corresponding layer is configured in the UE, the UE can implement channel estimation without waiting for the notification from the network side, which improves the channel estimation efficiency.
    • 本公开公开了一种解调参考信号(DMRS)的发送功率配置方法,该方法包括:配置资源元素(RE)中每层的DMRS的发送功率与相应的数据的发送功率之间的比率 层是一个恒定值。 同时,本公开公开了一种用于DMRS的发送功率配置装置。 本发明大大提高了数据帧解码的正确率,提高了解码性能。 本公开使得网络侧不需要向UE通知每层的DMRS的发送功率与相应层的数据的发送功率之间的对应关系,这简化了网络侧的控制信令的开销。 由于UE在每层配置DMRS发送功率与对应层数据发送功率之间的对应关系,UE可以在不等待网络通知的情况下实现信道估计,提高了信道估计效率。
    • 79. 发明申请
    • METHOD AND DEVICE FOR DETERMINING CQI VALUE IN COORDINATED MULTI-POINT TRANSMISSION/RECEPTION
    • 用于确定协调多点传输/接收中的CQI值的方法和设备
    • US20120140694A1
    • 2012-06-07
    • US13390463
    • 2010-06-09
    • Yunfeng SunJunfeng ZhangJing JiangChangqing Zhu
    • Yunfeng SunJunfeng ZhangJing JiangChangqing Zhu
    • H04W4/06
    • H04B7/024H04B7/0632H04L1/0003H04L1/0009H04L1/0026H04L1/0035H04W72/085
    • In the invention, a method for determining a channel quality indicator (CQI) value in coordinated multi-point transmission/reception (COMP) is provided, wherein the method comprises the following steps: a receiving side feeds back an independent CQI value or normalized useful signal power of each point of all or part of the points in a COMP measurement set or reporting set to a network side; the receiving side feeds back the correlation coefficient between the channel of each point and the channel of a master serving point to the network side; and the network side determines, according to the correlation coefficient and the independent CQI value of each point or normalized useful signal power, the CQI value used for coordinated multi-point transmission/reception. In the invention, a device is also provided for determining the CQI value in COMP. The feedback overhead is low in the present invention, and a more accurate final CQI value can be obtained through function operation.
    • 在本发明中,提供了一种用于确定协调多点发送/接收(COMP)中的信道质量指示符(CQI)值的方法,其中,所述方法包括以下步骤:接收侧反馈独立的CQI值或归一化有用 将COMP测量集或报告集中的全部或部分点的每个点的信号功率设置为网络侧; 接收侧将每个点的信道与主服务点的信道之间的相关系数反馈到网络侧; 并且网络侧根据相关系数和各点的归一化有用信号功率的独立CQI值来确定用于协调的多点发送/接收的CQI值。 在本发明中,还提供了用于确定COMP中的CQI值的装置。 本发明中的反馈开销较低,可以通过功能操作获得更准确的最终CQI值。
    • 80. 发明申请
    • SERUM/PLASMA MICRONAS AND USES THEREOF
    • US20100173288A1
    • 2010-07-08
    • US12302196
    • 2007-12-06
    • Chenyu ZhangJunfeng ZhangXi ChenYi BaJiangning ChenJin WangKe ZengHongjie Zhang
    • Chenyu ZhangJunfeng ZhangXi ChenYi BaJiangning ChenJin WangKe ZengHongjie Zhang
    • C12Q1/68C12M1/34
    • C12Q1/6886C12Q1/6809C12Q1/6876C12Q1/6883C12Q2600/158C12Q2600/178C12Q2525/207
    • This invention provides a combination of microRNAs for evaluating the physiological and/or pathological condition of a subject, wherein the combination comprises all detectable microRNAs stably existing in the serum/plasma of a subject; and a method for evaluating the physiological and/or pathological condition of a subject, wherein the method includes determining all detectable microRNAs stably existing in the serum/plasma of a subject; and a kit for evaluating the physiological and/or pathological condition of a subject, wherein the kit contains the tools for determining all detectable microRNAs that stably existing in the serum/plasma of a subject; and a biochip for evaluating the physiological and/or pathological condition of a subject, wherein the biochip contains the components for determining all detectable microRNAs stably existing in the serum/plasma of a subject. The aforementioned combination, method, kit and biochip can be used for diagnosis as well as differentially diagnosis of diseases including various tumors; various acute/chronic infectious diseases, e.g. viral diseases such as viral influenza, viral hepatitis, AIDS, SARS, bacterial diseases such as tuberculosis, bacterial pneumonia, and other acute/chronic infectious diseases caused by various pathogenic microorganisms; other acute/chronic diseases such as diseases of respiratory system, diseases of immune system, diseases of blood and hematopoietic system, diseases of circulatory system such as cardio-cerebrovascular diseases, metabolic diseases of endocrine system, diseases of digestive system, diseases of nervous system, diseases of urinary system, diseases of reproductive system and diseases of locomotor system, prediction of complications occurrence and malignant diseases relapse, evaluation of therapeutic effects, screening of pharmaceutical active ingredients, assessment of drug efficacy as well as forensic authentication and prohibited drug inspection and the like, possessing a number of advantages such as extensive detection spectrum, high sensitivity, low cost, convenience for sampling, ease for sample preservation, etc. The said method can be widely used in work related to general survey of diseases and so on, improve the low-specificity and low-sensitivity caused by individual differences which single markers are difficult to overcome, significantly increasing the clinical detection rate of diseases, all of which make it become an effective means for diagnosing diseases in an early phase.